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Electrotransformation of clostridium pasteurianum

机译:巴氏梭菌的电转化

摘要

By this invention, for the first time, a method for high-efficiency genetic transformation of the anaerobic bacterium Clostridium pasteurianum is provided. Clostridium pasteurianum is a bacterium of substantial industrial importance, due to its selectivity and high productivity of the biofuel and biochemical n-butanol, and its ability to grow on a wide variety of inexpensive substrates. Notable among the substrates that it can utilize as a sole source of carbon and energy is glycerine, which is produced in increasing quantities globally as a by-product of biodiesel processing. The industrial exploitation of Clostridium pasteurianum has previously been impeded by the lack of genetic engineering tools for this bacterium. This invention provides such tools for the first time. Included in the invention is a means for protecting newly introduced DNA from degradation by a restriction enzyme within C. pasteurianum. Then, a detailed protocol is given, which enables high-efficiency transformation of C. pasteurianum via a series of treatments and electroporation conditions which successfully negotiate the resistant cell wall of C. pasteurianum. Finally, the invention discloses selection markers and vector components, which round out the tools required to successfully perform genetic engineering in C. pasteurianum for the first time.
机译:通过本发明,首次提供了一种用于厌氧细菌巴氏梭菌的高效遗传转化的方法。由于巴氏梭菌对生物燃料和生化正丁醇的选择性和高生产率,并且能够在各种廉价的底物上生长,因此巴氏梭菌是具有重要工业意义的细菌。可以用作唯一碳和能量来源的底物中值得注意的是甘油,甘油是生物柴油加工的副产品,在全球范围内越来越多地生产。先前由于缺乏对该细菌的基因工程工具而阻碍了巴氏梭菌的工业开发。本发明首次提供了这样的工具。本发明包括一种保护新导入的DNA免受巴氏梭菌内的限制性酶降解的手段。然后,给出了详细的协议,该协议能够通过一系列处理和电穿孔条件成功地转化巴氏梭菌的抗性细胞壁,从而实现巴氏梭菌的高效转化。最后,本发明公开了选择标记和载体组分,其完善了首次成功在巴氏杆菌中进行基因工程所需的工具。

著录项

  • 公开/公告号GB201513812D0

    专利类型

  • 公开/公告日2015-09-16

    原文格式PDF

  • 申请/专利权人 NEEMO INC;

    申请/专利号GB20150013812

  • 发明设计人

    申请日2014-03-06

  • 分类号C12N15/74;C12N1/21;C12N15/64;C12N15/87;

  • 国家 GB

  • 入库时间 2022-08-21 14:53:45

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